Robust optimization in the synthesis of flexible polygeneration system using P-graph approach

Polygeneration systems maximize the use of resources by integrating several processes such as the production of heat and power into one system. By utilizing the residual streams of some processes and using them as raw materials for another process, the demand for resources is lowered. Due to the gra...

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Main Authors: Cleofas, Maria Eliza A., Okusa, James S., Madria, Venn Royce
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Language:English
Published: Animo Repository 2016
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Online Access:https://animorepository.dlsu.edu.ph/etd_bachelors/8687
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Institution: De La Salle University
Language: English
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spelling oai:animorepository.dlsu.edu.ph:etd_bachelors-93322021-08-06T03:05:55Z Robust optimization in the synthesis of flexible polygeneration system using P-graph approach Cleofas, Maria Eliza A. Okusa, James S. Madria, Venn Royce Polygeneration systems maximize the use of resources by integrating several processes such as the production of heat and power into one system. By utilizing the residual streams of some processes and using them as raw materials for another process, the demand for resources is lowered. Due to the gradual shift to green technologies, polygeneration systems have been constantly studied. This study aims to develop a P-graph based robust optimization approach in the synthesis of flexible poly generation systems under uncertainty. The presence of uncertainty in the product demands and raw material supply can lead to non-optimal operations when not taken into account in the design phase of the system. The robust optimization approach considers predefined scenarios wherein the polygeneration system is expected to operate. The optimal design is one wherein it can feasibly operate at all predefined scenarios while maximizing profitability. This approach utilizes a multi-period P-graph model which simultaneously considers different operating scenarios. The P-graph framework was used due to its fast computational time and capability to solve both optimal and n-best optimal solutions. The developed model was applied to three case studies involving the design of a quadgeneration system producing heat, power, cooling and treated water. Additionally, a sensitivity analysis was performed to determine the effects of the changes in the prices of the raw materials and products to the profit of the system. 2016-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/etd_bachelors/8687 Bachelor's Theses English Animo Repository Robust optimization Chemical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Robust optimization
Chemical Engineering
spellingShingle Robust optimization
Chemical Engineering
Cleofas, Maria Eliza A.
Okusa, James S.
Madria, Venn Royce
Robust optimization in the synthesis of flexible polygeneration system using P-graph approach
description Polygeneration systems maximize the use of resources by integrating several processes such as the production of heat and power into one system. By utilizing the residual streams of some processes and using them as raw materials for another process, the demand for resources is lowered. Due to the gradual shift to green technologies, polygeneration systems have been constantly studied. This study aims to develop a P-graph based robust optimization approach in the synthesis of flexible poly generation systems under uncertainty. The presence of uncertainty in the product demands and raw material supply can lead to non-optimal operations when not taken into account in the design phase of the system. The robust optimization approach considers predefined scenarios wherein the polygeneration system is expected to operate. The optimal design is one wherein it can feasibly operate at all predefined scenarios while maximizing profitability. This approach utilizes a multi-period P-graph model which simultaneously considers different operating scenarios. The P-graph framework was used due to its fast computational time and capability to solve both optimal and n-best optimal solutions. The developed model was applied to three case studies involving the design of a quadgeneration system producing heat, power, cooling and treated water. Additionally, a sensitivity analysis was performed to determine the effects of the changes in the prices of the raw materials and products to the profit of the system.
format text
author Cleofas, Maria Eliza A.
Okusa, James S.
Madria, Venn Royce
author_facet Cleofas, Maria Eliza A.
Okusa, James S.
Madria, Venn Royce
author_sort Cleofas, Maria Eliza A.
title Robust optimization in the synthesis of flexible polygeneration system using P-graph approach
title_short Robust optimization in the synthesis of flexible polygeneration system using P-graph approach
title_full Robust optimization in the synthesis of flexible polygeneration system using P-graph approach
title_fullStr Robust optimization in the synthesis of flexible polygeneration system using P-graph approach
title_full_unstemmed Robust optimization in the synthesis of flexible polygeneration system using P-graph approach
title_sort robust optimization in the synthesis of flexible polygeneration system using p-graph approach
publisher Animo Repository
publishDate 2016
url https://animorepository.dlsu.edu.ph/etd_bachelors/8687
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